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Genetic Engineering of Carbon Monoxide-dependent Hydrogen-producing Machinery in

机译:一氧化碳依赖氢生产机械基因工程

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摘要

The metabolic engineering of carbon monoxide (CO) oxidizers has the potential to create efficient biocatalysts to produce hydrogen and other valuable chemicals. We herein applied markerless gene deletion to CO dehydrogenase/energy-converting hydrogenase (CODH/ECH) in the thermophilic facultative anaerobe, Parageobacillus thermoglucosidasius. We initially compared the transformation efficiency of two strains, NBRC 107763T and TG4. We then disrupted CODH, ECH, and both enzymes in NBRC 107763T. The characterization of growth in all three disruptants under 100% CO demonstrated that both enzymes were essential for CO-dependent growth with hydrogen production in P. thermoglucosidasius. The present results will become a platform for the further metabolic engineering of this organism.
机译:一氧化碳(CO)氧​​化剂的代谢工程具有促进有效的生物催化剂以产生氢和其他有价值的化学品。在嗜热性骨育Anaerobe,Paragebacillus Thermogosidasius中,我们在本文中施用无价值基因缺失至CO脱氢酶/能量转换氢酶(CODH / ECH)。我们最初比较了两个菌株的转化效率,NBRC 107763T和TG4。然后我们在NBRC 107763T中扰乱了Codh,Eqh和Bec Zymes。在100%CO中的所有三种破坏剂中生长的表征证明,两种酶对于共同依赖于P. Thermoglucosidusius的氢生产是必不可少的。目前的结果将成为该生物体进一步代谢工程的平台。

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